炼铁厂高温烟气流场特性及排风罩优化
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国家自然科学基金重点项目(51238010)


Flow Field of High-temperature Gases and Exhaust Hood Optimization in Ironmaking Plant
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    摘要:

    钢铁企业炼铁厂在生产过程中产生大量高温烟气,但由于受到工艺条件限制无法设置理想的热源上部接受罩,热羽流作用造成排风罩顶部容易产生粉尘逃逸。基于炼铁厂粉尘组成成分和粒径分布的测试结果,采用数值分析的方法研究高温条件下气固两相流动,建立了适用于高温含尘烟气分析的数值模型,确定了数值模拟关键边界条件。研究发现罩内抽风口汇流场速度衰减快而热羽流作用强烈,提出排风罩内的压力分布控制方法及影响高温粉尘逃逸的关键因素。通过排风罩内热羽流及通风气流耦合作用下的流场分析,阐明抽风口在侧面布置的排风罩的优化设计方法及工程实践效果。

    Abstract:

    Large amounts of high-temperature gases were generated in ironmaking plant and ideal acceptable hood above the heat source was not installed affected by process conditions. At the top of the exhaust hood, dust easily escaped because of thermal plume.Based on the test data of dust composition and size distribution in ironmaking plant, numerical models suitable for high-temperature dust gases were established and key boundary conditions for the gas-solid two-phase flow under high-temperature conditions were determined.The study shows velocity decay of convergence field is sharp at the suction outlet and thermal plume is strong in the exhaust hood. The control method of pressure distribution and the key factor to prevent high-temperature dust escaping are proposed in the exhaust hood. Optimized design and engineering practice of the exhaust hood are given when the suction outlet is on the side after analyzing the flow field resulted from coupling effect of thermal plume and ventilation airflow.

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王怡,黄艳秋,刘加平,肖萍,文福.炼铁厂高温烟气流场特性及排风罩优化[J].土木与环境工程学报(中英文),2013,35(Z1):162-166. Wang Yi, Huang Yangqiu, Liu Jiaping, Xiao Ping, Wen Fu. Flow Field of High-temperature Gases and Exhaust Hood Optimization in Ironmaking Plant[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2013,35(Z1):162-166.[doi]

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  • 在线发布日期: 2013-07-16
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